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Modeling of micro-perforated panels effect in a complex vibro-acoustic environment using Patch Transfer Function approach

机译:使用膜片传递函数方法对复杂的振动声环境中的微孔板效果建模

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The micro-perforated panel with a backing cavity is a well known device for providing efficient noise absorption. This device has been thoroughly studied in the experimental conditions of an acoustic tube (Kundt tube) to quantify its absorption coefficient. In such situation, the system has one single dimension and the micro-perforated panel is excited by a normal incident plane wave. In a more practical and industrial setting, the efficiency of Micro-Perforated Structure (MPS) may be influenced by the vibro-acoustic behavior of the surrounding systems as well as different finds of excitation. In this paper, a Patch Transfer Functions (PTF) approach is proposed to model the MPS behaviour in such Complex Vibro-Acoustic Environment (CVAE). PTF is a substructuring approach which allows assembling different vibro-acoustic subsystems coupled through surfaces. The proposed PTF formulation of the MPS is capable of taking the microperforations and the flexibility of the panel into account and allows easy prediction of the efficiency of a MPS in a practical vibro-acoustic environment. In order to validate the present approach, PTF results are compared with experimental measurements on a test case from published literature.
机译:具有背衬腔的微孔板是众所周知的用于提供有效的噪声吸收的装置。在声学管(Kundt管)的实验条件下对该设备进行了彻底的研究,以量化其吸收系数。在这种情况下,系统具有一个单一的尺寸,并且微穿孔的面板被法向入射平面波激发。在更实际的工业环境中,微孔结构(MPS)的效率可能会受到周围系统的声声行为以及激发的不同发现的影响。在本文中,提出了一种补丁传递函数(PTF)方法来对这种复杂的振动声环境(CVAE)中的MPS行为进行建模。 PTF是一种子结构化方法,它允许组装通过表面耦合的不同振动声子系统。所提出的MPS的PTF配方能够考虑微穿孔和面板的柔韧性,并能够轻松预测实际振动声环境中MPS的效率。为了验证本方法,将PTF结果与来自已发表文献的测试用例的实验测量结果进行比较。

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